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Lee, M.-S.*; 川崎 卓郎; 山下 享介*; Harjo, S.; Hyun, Y.-T.*; Jeong, Y.*; Jun, T.-S.*
Scientific Reports (Internet), 12(1), p.3719_1 - 3719_10, 2022/03
被引用回数:16 パーセンタイル:70.68(Multidisciplinary Sciences)Titanium has a significant potential for the cryogenic industrial fields such as aerospace and liquefied gas storage and transportation due to its excellent low temperature properties. To develop and advance the technologies in cryogenic industries, it is required to fully understand the underlying deformation mechanisms of Ti under the extreme cryogenic environment. Here, we report a study of the lattice behaviour in grain families of Grade 2 CP-Ti during in-situ neutron diffraction test in tension at temperatures of 15-298 K. Combined with the neutron diffraction intensity analysis, EBSD measurements revealed that the twinning activity was more active at lower temperature, and the behaviour was complicated with decreasing temperature.
Kwon, H.*; Harjo, S.; 川崎 卓郎; Gong, W.; Jeong, S. G.*; Kim, E. S.*; Sathiyamoorthi, P.*; 加藤 秀実*; Kim, H. S.*
Science and Technology of Advanced Materials, 23(1), p.579 - 586, 2022/00
被引用回数:12 パーセンタイル:62.47(Materials Science, Multidisciplinary)Metastability engineering is a strategy to enhance the strength and ductility of alloys via deliberately lowering phase stability and prompting deformation-induced martensitic transformation. In this work, the martensitic transformation and its effect on the mechanical response of a FeCo
Ni
Al
Ti
Mo
medium-entropy alloy (MEA) were studied by in situ neutron diffraction under tensile loading. This work shows how great a role FCC to BCC martensitic transformation can play in enhancing the mechanical properties of ferrous MEAs.
Kim, S.*; Lee, B.*; Reeder, J. T.*; Seo, S. H.*; Lee, S.-U.*; Hourlier-Fargette, A.*; Shin, J.*; 関根 由莉奈; Jeong, H.*; Oh, Y. S.*; et al.
Proceedings of the National Academy of Sciences of the United States of America, 117(45), p.27906 - 27915, 2020/11
被引用回数:107 パーセンタイル:94.19(Multidisciplinary Sciences)本研究では、汗のコルチゾール分析のための流動イムノアッセイ、グルコースとアスコルビン酸(ビタミンC)分析のための蛍光測定イメージング、および電極を使用した発汗速度のデジタルトラッキングを組み合わせた、ワイヤレス,バッテリー不要の皮膚インターフェースマイクロ流体システムを実現した。運動している被験者を対象とした体系的なテストにより、本開発デバイスが物理的ストレスと生化学的相関を追跡可能であることが示された。
Jeong, J. H.*; Bae, Y. S.*; Joung, M.*; Kim, H. J.*; Park, S. I.*; Han, W. S.*; Kim, J. S.*; Yang, H. L.*; Kwak, J. G.*; 坂本 慶司; et al.
Fusion Engineering and Design, 88(5), p.380 - 387, 2013/06
被引用回数:4 パーセンタイル:30.59(Nuclear Science & Technology)A 3.6 MW DC power supply system was developed for the 170 GHz EC H&CD system in KSTAR. It consists of a cathode power supply (CPS), an anode power supply (APS) and a body power supply (BPS). The CPS is capable of supplying a voltage of -66 kV and a current of 55 A to the cathode with respect to the collector using pulse step modulation (PSM). The APS is a voltage divider system consisting of a fixed resistor and zener diode units with the capability of 60 kV stand-off voltage. For high frequency current modulation, the parallel discharge switch is introduced between the cathode and anode. The BPS is a DC power supply with 50 kV/160 mA. The series MOS-FET solid-state switch is used for on/off modulation in the body voltage sychronizing with anode voltage. The parallel discharge switch is also introduced between the body and collector for high frequency RF modulation. This paper describes the key features of the high voltage power supply system as well as the test results.